JP2008183070A - Apparatus for improving healing power of living matter - Google Patents

Apparatus for improving healing power of living matter Download PDF

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JP2008183070A
JP2008183070A JP2007017200A JP2007017200A JP2008183070A JP 2008183070 A JP2008183070 A JP 2008183070A JP 2007017200 A JP2007017200 A JP 2007017200A JP 2007017200 A JP2007017200 A JP 2007017200A JP 2008183070 A JP2008183070 A JP 2008183070A
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JP4938477B2 (en
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Noboru Horiguchi
昇 堀口
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Abstract

<P>PROBLEM TO BE SOLVED: To improve a pH improving effect in an apparatus for improving the healing power of living matter, such as an electric potential therapy apparatus. <P>SOLUTION: The apparatus for improving the healing power of a living matter is provided with two or more sets of electric potential therapy units each comprising a high voltage power supply circuit for generating a high voltage negative potential, a negative potential applying electrode for applying the negative potential from the high voltage power supply circuit to the prescribed site of the living matter, and a counter electrode facing the negative potential applying electrode across the prescribed site of the living matter for guiding charges from the negative potential applying electrode through the viable tissue of the living matter to the ground side of the high voltage power supply circuit, the two or more sets of electric potential therapy units being drive-controlled by one AC power source and one microcomputer control unit. In the apparatus, the respective ground lines of the two or more sets of electric potential therapy units are configured as the independent ones isolated from each other, and the following problem is surely remedied: the current of the electrode part of each set of electric potential therapy unit flows to the counter electrode part side of the electrode part of the different electric potential therapy unit and obstructs the treating effect of the part. <P>COPYRIGHT: (C)2008,JPO&INPIT

Description

本願発明は、電位治療器等の血液中のペーハ値(pH値)を改善することにより生命体の治癒力を向上させる生命体の治癒力向上装置に関するものである。   The present invention relates to an apparatus for improving the healing power of a living body that improves the healing power of the living body by improving the pH value (pH value) in blood such as an electric potential treatment device.

理学療法器具である電位治療器等の生命体の治癒力向上装置は、酸性化した人体等生命体の血液のペーハ値(pH値)をアルカリ性に傾ける作用があることは、すでに本願発明者の長年に亘る研究の結果から明らかになっている(例えば特許文献1、特許文献2等参照)。   It has already been confirmed by the inventor of the present application that an apparatus for improving the healing power of a living organism such as an electric potential therapy device that is a physiotherapy instrument has an action of tilting the pH value (pH value) of a living organism such as an acidified human body to alkaline. It has become clear from the results of research over many years (see, for example, Patent Document 1 and Patent Document 2).

さらに、その後の研究の結果、同血液のペーハ値を改善すると、血液中の活性酸素を消去し、酸化還元電位(ORP)を低下させることが確認されており、これは血液中の酸化型の抗酸化物質の還元により、抗酸化作用を得ることができるためであると考えられる。つまり、電位治療器等の生命体の治癒力向上装置は、生体をアルカリ性に傾けるとともに、生体の酸化ストレスを抑制する機能があり、直接免疫細胞に働いて免疫機能を向上させることにも有意性があることが見出されている。   Furthermore, as a result of subsequent studies, it has been confirmed that, when the pH value of the blood is improved, the active oxygen in the blood is eliminated and the redox potential (ORP) is lowered. This is probably because an antioxidant action can be obtained by reduction of the antioxidant. In other words, life-healing power improvement devices such as electric potential therapy devices have the function of tilting the living body to alkalinity and suppressing the oxidative stress of the living body, and are also significant in improving immune function by working directly on immune cells It has been found that there is.

このような生命体の治癒力向上装置として、例えば図12〜図15に示すような、本願発明者が先に開発した電位治療器がある。   As an apparatus for improving the healing power of such a living body, there is an electric potential treatment device previously developed by the present inventor as shown in FIGS.

この電位治療器1は、先ず図12に示すように、マイコン制御ユニットおよび負電位発生回路等を備えて構成された制御回路部2と、この制御回路部2のマイコン制御ユニットにより画面上に各種の操作ガイダンスを表示するとともに上記マイコン制御ユニットに対して同表示された操作ガイダンスに対応した操作指令を入力するタッチパネル3とから構成され、その本体部正面の下部には、負電位印加電極5a,5a接続用のコネクタ部4a,4aと負電位印加電極5a,5aに対向して設置され、負電位印加電極5a,5aからの負電位を被治療者の手又は足の指部MF等を介して誘引する対向電極5b,5b接続用のコネクタ部4b,4bが設けられている。   First, as shown in FIG. 12, the potential treatment device 1 includes a control circuit unit 2 configured to include a microcomputer control unit, a negative potential generation circuit, and the like, and a microcomputer control unit of the control circuit unit 2 displays various types on the screen. And a touch panel 3 for inputting an operation command corresponding to the operation guidance displayed on the microcomputer control unit, and a negative potential application electrode 5a, 5a is connected to the connector portions 4a and 4a for connecting to the negative potential applying electrodes 5a and 5a, and the negative potential from the negative potential applying electrodes 5a and 5a is passed through the hand MF or the like of the person to be treated. Connector portions 4b and 4b for connecting the counter electrodes 5b and 5b to be attracted are provided.

そして、これら各コネクタ部4a,4a、4b,4bに対して、例えば所望の長さのケーブル50a,50aおよび50b,5bを介して対応する負電位印加電極5a,5aおよび対向電極5b,5bが着脱可能に接続されるようになっている。   And, for each of these connector portions 4a, 4a, 4b, 4b, for example, corresponding negative potential applying electrodes 5a, 5a and counter electrodes 5b, 5b are provided via cables 50a, 50a and 50b, 5b having desired lengths. It is designed to be detachably connected.

そして、上記制御回路部2は、例えば図14に示すように、上述の第1,第2の2組の電極部5a・5b,5a・5bに対応した第1,第2の2組の電位治療ユニット6a,6bを備えて構成されている。   Then, as shown in FIG. 14, for example, the control circuit unit 2 includes first and second sets of potentials corresponding to the first and second sets of electrodes 5a and 5b and 5a and 5b. It comprises treatment units 6a and 6b.

図14中、符号23,23は、図示しないAC商用電源の電源電圧AC100(V)をDC電圧+24(V)に変換する整流器およびトランスを組み合わせた交直変換手段である図示しないACアダプター(AC/DC変換器)からのDC電圧+24(V)を、−12(V)に変換した後に例えば−6(KV)の高負電圧に昇圧する昇圧手段よりなる高電圧電源回路(直流高圧電源)、22,22は、同高圧電源回路23,23からの直流電源電圧−6(KV)を所定の脈動成分を含む直流高圧電源電圧に変換した上で、負電位供給ライン21を介して当該各組の電位治療ユニット6a,6bにおける負電位印加電極(導子極板)5a,5aに供給するイオン変換器(脈動電圧発生器)、5b,5bは上記負電位印加電極5a,5aとの間に被治療者の手又は足の指部等を挟んで対向し、例えば図15のようにして高圧電源回路23,23のアースライン25側に効率良く負電荷を誘引する対向電極である。   In FIG. 14, reference numerals 23 and 23 denote AC adapters (not shown) which are AC / DC converters (AC / AC) which are a combination of a rectifier and a transformer for converting a power supply voltage AC100 (V) of an AC commercial power supply (not shown) into a DC voltage +24 (V). DC voltage +24 (V) from the DC converter) is converted to -12 (V) and then boosted to a high negative voltage of, for example, -6 (KV), for example, a high voltage power supply circuit (DC high voltage power supply), 22 and 22 convert the DC power supply voltage −6 (KV) from the high-voltage power supply circuits 23 and 23 into a DC high-voltage power supply voltage including a predetermined pulsation component, and then each of the groups via the negative potential supply line 21. The ion converters (pulsation voltage generators) 5b, 5b for supplying the negative potential application electrodes (conductor electrode plates) 5a, 5a in the potential treatment units 6a, 6b are connected between the negative potential application electrodes 5a, 5a. Face each other across the therapist's hand or foot fingers like, for example, a counter electrode to attract efficiently negative charge to the ground line 25 side of the high-voltage power supply circuit 23, 23 as in Figure 15.

このような構成の電位治療器1では、例えば図13に示すように、被治療者Mが右手と左手の指部MF,MF全体をそれぞれ締結バンドB,Bを介して上記負電位印加電極5a,5aと対向電極5b,5bとの間に挟んだ状態で、上記図14の高圧電源23,23を作動させると、同高圧電源23からの高圧の負電位−6KVがイオン変換器22,22を通して電位が細かく上下する脈動電圧(リップル電圧)に変換された後に、上記負電位印加電極5a,5aを介して被治療者の左右の手の指部MF,MFに印加される。   In the potential treatment device 1 having such a configuration, for example, as shown in FIG. 13, the person to be treated M holds the entire finger portions MF and MF of the right hand and the left hand through the fastening bands B and B, respectively. , 5a and the counter electrodes 5b, 5b, when the high-voltage power supply 23, 23 of FIG. 14 is operated, the high-voltage negative potential -6 KV from the high-voltage power supply 23 is converted into the ion converters 22, 22 After being converted to a pulsating voltage (ripple voltage) that rises and falls finely through, it is applied to the fingers MF and MF of the left and right hands of the patient via the negative potential applying electrodes 5a and 5a.

一方、この時上記対向電極5b,5b側はケーブル50b,50bを含むアースライン25,25を介して大地に接続された高圧電源回路23,23のアースライン(0V)に接続されており、電位ゼロとなっている。   On the other hand, the counter electrodes 5b and 5b are connected to the ground line (0 V) of the high-voltage power supply circuits 23 and 23 connected to the ground via the ground lines 25 and 25 including the cables 50b and 50b. It is zero.

その結果、上記被治療者の手の指部MF,MFの表面には、図示のごとく静電誘導により多数のマイナスの電荷e-,e-・・・が帯電し、同負電荷e-,e-・・・が同手の指部MF,MFの生体組織を介して相対的にプラス電位である対向電極5b,5b側に効率良く誘引されて通過する。 As a result, the above-described hand the treated subject fingers MF, on the surface of the MF a number of negative charge e by electrostatic induction as shown -, e - · · · is charged, the negative charge e -, e - · · · passes are efficiently attracted to the counter electrode 5b, 5b side is relatively positive potential via the fingers MF, MF of the living tissue of the same hand.

この通過時に、同多数の負電荷e-,e-・・・が手の指部MF,MF内の多数本の血管中を流れる血液の血液細胞(特に赤血球細胞)に作用して、同血液細胞中の水素イオン(H+)を還元してアルカリ性の水素原子Hに変える。 During this passage, the number of negative charges e -, e - · · · acts on blood cells (particularly red blood cells) of the blood flowing through the hand fingers MF, a large number of blood vessels in the MF, the blood Hydrogen ions (H + ) in the cells are reduced to alkaline hydrogen atoms H.

これにより、血液中のpHが上昇し、酸性度が低下し、免疫機能が向上する。   Thereby, pH in blood rises, acidity falls, and an immune function improves.

なお、図15中、符号51は負電位が供給される銅製の電極板を包む導電性の不織布、52は不織布51外周囲の隙間、53,54は絶縁性のゴム薄板、55は導電性の繊維材(充填材)、56は塩ビシート、57はレザーカバー、58は銅板、59は導電性の不織布である。   In FIG. 15, reference numeral 51 is a conductive non-woven fabric that encloses a copper electrode plate to which a negative potential is supplied, 52 is a gap around the non-woven fabric 51, 53 and 54 are insulating rubber thin plates, and 55 is a conductive plate. Fiber material (filler), 56 is a vinyl chloride sheet, 57 is a leather cover, 58 is a copper plate, and 59 is a conductive nonwoven fabric.

特開平09−28816号公報JP 09-28816 A 特開2005−296441号公報JP 2005-296441 A

ところで、上述のように、図12〜図15の電位治療器の構成では、負電位印加電極5aと対向電極5bのセットよりなる電極部および同電極部を備えた電位治療ユニットが左右に一対設けられた2組のものとなっており、それらは1つのAC電源、1つのマイコン制御ユニットによって駆動制御され、しかも上記電極部の対向電極5b,5bは各高圧電源回路23,23のアース端子を介して共通にアースされている。   By the way, as described above, in the configuration of the potential treatment device of FIGS. 12 to 15, a pair of potential treatment units each including the electrode portion including the negative potential application electrode 5 a and the counter electrode 5 b and the electrode portion are provided on the left and right. The two electrodes are driven and controlled by one AC power source and one microcomputer control unit, and the opposing electrodes 5b and 5b of the electrode section are connected to the ground terminals of the high-voltage power supply circuits 23 and 23, respectively. Is grounded in common.

したがって例えば図14中に矢印(鎖線)で示したように、一方側(6a側)の負電位印加電極5aから手の指部MFに印加された負電位による負電荷e-,e-・・・によって生じた治療電流iが、被治療者Mの人体MBおよび手の指部MFを通して他方側(6b側)の対向電極5bに流れ、同他方側の手の指部MF部および対向電極5b部分で本来の負電位印加電極5aを介して印加される治療電流(電荷電流)iとの干渉を生じ、同他方側電極部でのpH改善効果が阻害される問題が見出された。 Therefore, for example, as indicated by arrows (chain lines) in FIG. 14, negative charges e , e −, ... Due to the negative potential applied to the finger part MF from the negative potential applying electrode 5a on one side (6a side). The treatment current i generated by the current flows to the opposite electrode 5b on the other side (6b side) through the human body MB of the subject M and the finger part MF of the hand, and the finger part MF part and the counter electrode 5b on the other hand side A problem was found in which the interference with the treatment current (charge current) i applied via the original negative potential application electrode 5a occurred in the portion, and the effect of improving the pH at the other electrode portion was hindered.

本願発明は、このような問題を解し、より有効に血液中のpH改善効果を向上させることを目的としてなされたものである。   The present invention has been made for the purpose of solving such problems and improving the effect of improving pH in blood more effectively.

本願発明は、上記の目的を達成するために、次のような課題解決手段を備えて構成されている。   In order to achieve the above object, the present invention is configured with the following problem solving means.

(1) 請求項1の発明
この発明の課題解決手段は、高圧の負電位を発生する高圧電源回路と、該高圧電源回路からの負電位を生命体の所定部位に印加する負電位印加電極と、該負電位印加電極との間に生命体の所定の部位を挟んで対向し、負電位印加電極からの電荷を生命体の生体組織を介して上記高圧電源回路のアース側に誘引する対向電極とからなる電位治療ユニットを複数組備え、これら複数組の電位治療ユニットを1つのAC電源、1つのマイコン制御ユニットで駆動制御するようにしてなる生命体の治癒力向上装置において、上記複数組の電位治療ユニットの各々の上記アースラインを相互にアイソレーションした独立のものとして構成したことを特徴としている。
(1) Invention of Claim 1 The problem-solving means of the present invention includes a high-voltage power supply circuit that generates a high-voltage negative potential, and a negative-potential application electrode that applies a negative potential from the high-voltage power supply circuit to a predetermined part of a living body. A counter electrode that opposes the predetermined part of the living organism with the negative potential applying electrode sandwiched between the negative potential applying electrode and attracts the charge from the negative potential applying electrode to the ground side of the high-voltage power supply circuit through the living tissue of the living organism In an apparatus for improving the healing power of a living body in which a plurality of sets of potential treatment units consisting of: and a plurality of sets of potential treatment units are driven and controlled by one AC power source and one microcomputer control unit, The above-described ground lines of each of the potential treatment units are configured to be independent from each other.

このように、治療対象部位を異にする複数組の電位治療ユニットの負電位印加電極および対向電極の各々のアースラインを相互に絶縁し、それぞれ独立させた状態で個別に電流を流すようにすると、前述のように一方の治療対象側の電極の電流が他方側別の治療対象側の被治療部および対向電極部に流れて、同部分の治療効果を阻害する問題が確実に改善される。   In this way, the ground lines of the negative potential application electrode and the counter electrode of a plurality of sets of potential treatment units with different treatment target parts are insulated from each other, and the currents are made to flow individually in an independent state. As described above, the current of the electrode on one treatment target side flows to the treated portion and the counter electrode portion on the other treatment target side, and the problem of hindering the therapeutic effect of the same portion is reliably improved.

(2) 請求項2の発明
この発明は、上記請求項1の発明の構成において、上記複数組の電位治療ユニットには、それぞれ静電抹消器が設けられていることを特徴としている。
(2) Invention of Claim 2 This invention is characterized in that, in the structure of the invention of Claim 1, each of the plurality of sets of potential treatment units is provided with an electrostatic neutralizer.

上述のように複数組の電位治療ユニットの各負電位印加電極および対向電極を相互に絶縁して独立したものとすると、負電位発生回路を含む制御回路部に浮遊容量が増え、治療電流値の変動や雑音の発生、また回路機能上各種の阻害を起こしやすくなる。   As described above, when the negative potential application electrodes and the counter electrodes of the plurality of sets of potential treatment units are insulated and independent from each other, stray capacitance increases in the control circuit unit including the negative potential generation circuit, and the treatment current value Fluctuations, noises, and various obstacles to circuit functions are likely to occur.

そこで、これを吸収抹消することにより、それら障害の発生を防止するとともに対向電極側の電位をより確実にゼロ(V)に維持するようにする。   Therefore, by eliminating this absorption, the occurrence of these failures is prevented and the potential on the counter electrode side is more reliably maintained at zero (V).

(3) 請求項3の発明
この発明は、上記請求項1又は2の発明の構成において、上記複数組の電位治療ユニットは、少なくとも3組であることを特徴としている。
(3) Invention of Claim 3 This invention is the configuration of the invention of Claim 1 or 2, characterized in that the plurality of sets of potential treatment units are at least three sets.

このように、上記複数組の電位治療ユニットを少なくとも3組にすると、負電位印加電極および対向電極を、例えば右手甲部および手掌、左手甲部および手掌に加えて左こめかみ及び右こめかみ、又は右足甲部および足裏、左足甲部および足裏に加えて左こめかみ及び右こめかみ等の各々を治療部として、体全体から見た効果的な位置で効率良く血液のpH改善効果をあげることができる。   In this way, when the plurality of sets of potential treatment units are at least three sets, the negative potential application electrode and the counter electrode are, for example, the left and right temples or the right foot in addition to the right back and palm, the left back and palm, for example. In addition to the upper part and sole, left instep part and sole, each of the left and right temples can be used as a treatment part to effectively increase blood pH at an effective position as seen from the whole body. .

(4) 請求項4の発明
この発明は、上記請求項1,2又は3の発明の構成において、上記複数組の電位治療ユニットの何れか所望の組の負電位印加電極および対向電極の内の対向電極は2つの対向電極により構成されていることを特徴としている。
(4) Invention of Claim 4 This invention is the configuration of the invention of Claim 1, 2 or 3, wherein any one of the plurality of sets of potential treatment units of the negative potential applying electrode and the counter electrode of the desired set is included. The counter electrode is characterized by comprising two counter electrodes.

このような構成によると、対向電極が2つある組の電位治療ユニットの電極部分では、例えば負電位印加電極と1つの対向電極とで被治療者の手指部を挟む一方、もう1つの対向電極を足の甲部又は足の裏部分に当接させて人体を流れる電流を拾うことができ、人体に流出する電流を有効に活用して1組の電極で2点治療を行うことが可能となる。   According to such a configuration, in the electrode portion of the pair of potential treatment units having two counter electrodes, for example, the finger part of the patient is sandwiched between the negative potential application electrode and one counter electrode, while the other counter electrode The current flowing through the human body can be picked up by contacting the back of the foot or the back of the foot, and the two-point treatment can be performed with one set of electrodes by effectively utilizing the current flowing out of the human body. Become.

(5) 請求項5の発明
この発明は、上記請求項1,2,3又は4の発明の構成において、上記複数組の電位治療ユニット各々の負電位印加電極および対向電極部分を流れる電流値を検出し、同対向電極部分を流れる電流値を所定の設定電流値に制御する電流制御手段を設けたことを特徴としている。
(5) Invention of Claim 5 This invention is the structure of the said invention of Claim 1, 2, 3, or 4 WHEREIN: The electric current value which flows through the negative electric potential application electrode of each of the said multiple sets of electric potential treatment unit and a counter electrode part is shown. A current control means for detecting and controlling a current value flowing through the counter electrode portion to a predetermined set current value is provided.

このような構成によると、被治療者の血液のpH値に応じたpH改善治療や治療部位、治療目的に応じた印加電圧、電流値、印加時間、印加タイミングの調節が可能となり、臨床的に最も効果的な治療電流、治療時間、治療タイミング、治療スパンの設定探求が可能となる。   According to such a configuration, it becomes possible to adjust the applied voltage, current value, application time, and application timing according to the pH improvement treatment and treatment site according to the blood pH value of the patient to be treated, the treatment purpose, and clinically. It is possible to search for the most effective treatment current, treatment time, treatment timing, and treatment span.

以上の結果、本願発明によれば、電位治療器等生命体の治癒力向上装置の治癒力向上効果を有効に改善することができる。   As a result of the above, according to the present invention, it is possible to effectively improve the healing power improvement effect of the living body healing power improvement device such as a potential treatment device.

図1〜図11は、例えば電位治療器として構成した本願発明の最良の実施の形態に係る生命体の治癒力向上装置の構成および作用を示している。   FIGS. 1-11 has shown the structure and effect | action of the healing power improvement apparatus of the living body which concerns on the best embodiment of this invention comprised, for example as an electric potential treatment device.

先ず図1は、同電位治療器本体部分の全体的な構成を示すもので、符号1は、電位治療器である。   First, FIG. 1 shows the overall structure of the main body of the same potential treatment device, and reference numeral 1 denotes a potential treatment device.

上記電位治療器1は、例えば図1に示すように、マイコン制御ユニットおよび負電位発生回路等を備えて構成された制御回路部2と、この制御回路部2のマイコン制御ユニットにより画面上に各種の操作ガイダンスを表示するとともに上記マイコン制御ユニットに対して同表示された操作ガイダンスに対応した操作指令を入力するタッチパネル3とから構成され、その本体部正面の下部には、3つの負電位印加電極5a,5a,5a接続用の3つのコネクタ部4a,4a.4aとこれらの3つの負電位印加電極5a,5a,5aに対向して設置され、同負電位印加電極5a,5a,5aからの負電位を被治療者の手又は足の指部MF、さらには頭部MH等を介して誘引する対向電極5b,5b,5b接続用の3つのコネクタ部4b,4b,4bが設けられている。   For example, as shown in FIG. 1, the potential treatment device 1 includes a control circuit unit 2 configured to include a microcomputer control unit, a negative potential generation circuit, and the like, and a microcomputer control unit of the control circuit unit 2 on the screen. And a touch panel 3 for inputting an operation command corresponding to the operation guidance displayed on the microcomputer control unit, and three negative potential application electrodes at the lower part of the front of the main body. Three connector parts 4a, 4a. 4a and these three negative potential application electrodes 5a, 5a, 5a are arranged opposite to each other, and the negative potential from the negative potential application electrodes 5a, 5a, 5a is applied to the toe MF of the hand or foot of the patient, Are provided with three connector portions 4b, 4b, 4b for connecting the counter electrodes 5b, 5b, 5b that are attracted via the head MH or the like.

そして、これら各コネクタ部4a,4a,4a、4b,4b,4bに対して、例えば所望の長さのケーブル50a,50a,50aおよび50b,50b,50bを介して対応する負電位印加電極5a,5a,5aおよび対向電極5b,5b,5bが着脱可能に接続されるようになっている(プラグイン構造)。   The negative potential application electrodes 5a, 4a, 4a, 4b, 4b, 4b corresponding to the connector portions 4a, 4a, 4a, 4b, 4b, 4b, for example, via the cables 50a, 50a, 50a and 50b, 50b, 50b having a desired length. 5a, 5a and counter electrodes 5b, 5b, 5b are detachably connected (plug-in structure).

これら相互に対向する第1〜第3の3組の電極部5a,5b、5a,5b、5a,5bは、例えば後述する制御回路部2の第1〜第3の電位治療ユニット6a〜6cの各々に対応して1ユニットとして構成されており、特に第1,第2の電位治療ユニット6a,6bに対応する第1,第2の電極部5a,5b、5a,5bの各対向電極5a,5bには、それぞれもう1つの対向電極5bが付加され、同一ケーブル50bの分岐された先端に2つの対向電極5b,5bが設けられた構成となっている。   These first to third three electrode portions 5a, 5b, 5a, 5b, 5a, 5b facing each other are, for example, the first to third potential treatment units 6a to 6c of the control circuit unit 2 described later. Each unit is configured as one unit, and in particular, each counter electrode 5a of the first and second electrode portions 5a, 5b, 5a, 5b corresponding to the first and second potential treatment units 6a, 6b. Another counter electrode 5b is added to 5b, and two counter electrodes 5b and 5b are provided at the branched ends of the same cable 50b.

そして、上記制御回路部2には、例えば図2に示されるように、上述の第1,第2,第3の3組の電極部5a・5b,5a・5b,5a・5bに対応した第1,第2,第3の3組の電位治療ユニット6a,6b,6cが設けられている。   The control circuit unit 2 includes, for example, as shown in FIG. 2, the first, second, and third sets of electrode units 5a, 5b, 5a, 5b, and 5a, 5b. Three sets of potential treatment units 6a, 6b, and 6c are provided.

そして、これら第1〜第3の電位治療ユニット6a〜6cには動作電源供給手段として、AC商用電源の電源電圧AC100(V)を例えばACインレット回路11および治療スイッチSWを介して入力し、DC電圧+24(V)に変換する例えば整流器およびトランスを組み合わせた電源回路(AC/DC変換トランス)12と、同+24(V)の直流電圧を24(V)のDC電圧にDC−DC変換する第1のDC−DC回路29bと、該第1のDC−DC回路29bを介して入力されるDC電圧24(V)を+15(V)と−15(V)の2つの電圧に変換する第2のDC−DC回路29aとが設けられている。   The first to third potential treatment units 6a to 6c are supplied with the AC commercial power supply voltage AC100 (V) via, for example, the AC inlet circuit 11 and the treatment switch SW as the operation power supply means, and the DC For example, a power supply circuit (AC / DC conversion transformer) 12 that combines a rectifier and a transformer that converts the voltage to +24 (V), and a DC-DC converter that converts the +24 (V) DC voltage into a DC voltage of 24 (V). 1 DC-DC circuit 29b and a second DC voltage 24 (V) input via the first DC-DC circuit 29b is converted into two voltages of +15 (V) and -15 (V). DC-DC circuit 29a.

そして、上記第1のDC−DC回路29bのDC電圧+24(V)を、D/A出力アンプ24を介して−12(V)に変換した後、リレースイッチRL1〜RL3が閉じていることを条件として同第1〜第3の電位治療ユニット6a〜6cの例えば−6(KV)の高負電圧に昇圧する昇圧手段よりなる高電圧電源回路23に供給するようになっている。 Then, after the DC voltage +24 (V) of the first DC-DC circuit 29b is converted to −12 (V) through the D / A output amplifier 24, the relay switches RL 1 to RL 3 are closed. Under these conditions, the first to third potential treatment units 6a to 6c are supplied to a high voltage power supply circuit 23 comprising a boosting means for boosting to a high negative voltage of, for example, -6 (KV).

そして、同高圧電源回路23からの負の電源電圧を図6のような所定の脈動成分を含む電源電圧に変換するイオン変換器22を介して上記電極部の負電位印加電極5aに供給する。   Then, the negative power supply voltage from the high-voltage power supply circuit 23 is supplied to the negative potential application electrode 5a of the electrode section via the ion converter 22 that converts the power supply voltage including a predetermined pulsation component as shown in FIG.

このイオン変換器22は、例えば図5に詳細に示されるように、有底箱型のケース本体41、同ケース本体41上端側の開口部に嵌合されるキャップよりなるABS等合成樹脂製の方形箱形の非導電性ケースを有し、該非導電性ケース内の方形空間部の相互に対向する端部面側に導電性金属板(例えばステンレス板、銅板など)よりなる第1,第2の平板状電極41a,41bと該第1,第2の平板状電極板41a,41bに電気的に接続された第1,第2のU状の補助電極41c,41dを設ける一方、さらにそれらの間の方形空間部内に、予じめ所定の設定湿度(好ましくは常温下で62%前後)に厳格に湿度管理された天然軽石等の多孔質の石材を外径1μm〜200μmの粉体状に形成した含水率2.5%〜4.0%程度の多孔質の無機材42を均一に充填し、同所定の設定湿度レベル(62%)に維持されるように正確に湿度設定した上で、キャップで確実に密閉状態にシールして構成されている。   For example, as shown in detail in FIG. 5, the ion converter 22 is made of a synthetic resin such as ABS, which includes a bottomed box-type case body 41 and a cap fitted to an opening on the upper end side of the case body 41. First and second made of a conductive metal plate (for example, a stainless steel plate, a copper plate, etc.) on the opposite end face sides of the rectangular space in the non-conductive case. Are provided with first and second U-shaped auxiliary electrodes 41c and 41d electrically connected to the first and second flat plate electrode plates 41a and 41b. A porous stone material such as natural pumice, which is strictly controlled to a predetermined humidity (preferably around 62% at room temperature) in advance, is formed into a powder with an outer diameter of 1 μm to 200 μm in the rectangular space The porous water content of about 2.5% to 4.0% formed The equipment 42 is filled uniformly, the humidity is accurately set so as to be maintained at the predetermined set humidity level (62%), and the cap is securely sealed with a cap.

なお、このイオン変換器22を介した図6に示す電圧波形は交番波形となっているが、これは実験上簡易にAC電圧を用いて脈動成分の大きさLVを確認したものであって、直流電圧の場合にも全く同様の脈動成分LVが生じることは実験により確認されている。   Note that the voltage waveform shown in FIG. 6 via the ion converter 22 is an alternating waveform, and this is a simple confirmation of the magnitude LV of the pulsating component using an AC voltage in the experiment, It has been confirmed by experiments that exactly the same pulsation component LV is generated even in the case of a DC voltage.

なお、図3中符号21は上記高圧電源回路23からイオン変換器22、コネクタ4a、ケーブル50aを介して負電位印加電極5aにいたる負電位印加ラインを、また25は上記対向電極5b,5bから逆流防止ダイオードD、電流検出抵抗Rを介して上記高圧電源回路23のアース側端子にいたるアースラインを示している。   In FIG. 3, reference numeral 21 denotes a negative potential application line from the high-voltage power supply circuit 23 to the negative potential application electrode 5a through the ion converter 22, the connector 4a, and the cable 50a, and 25 denotes the counter electrodes 5b and 5b. An earth line leading to the earth-side terminal of the high-voltage power supply circuit 23 through a backflow prevention diode D and a current detection resistor R is shown.

このような構成の電位治療器1では、例えば前述の図13に示すように、被治療者Mが右手と左手の指部MF,MF全体をそれぞれ締結バンドB,Bを介して上記負電位印加電極5aと対向電極5bとの間に挟んだ状態で、高圧電源23を作動させると、同高圧電源23からの高圧の負電位−6KVがイオン変換器22を通して図6のように電位が高周期で細かく上下するpH値改善に効果的な脈動電圧(リップル電圧)に変換された後に、上記負電位印加電極5aを介して被治療者の左右の手の指部MFに印加されることになる。   In the potential treatment device 1 having such a configuration, for example, as shown in FIG. 13 described above, the patient M applies the negative potential to the entire finger portions MF and MF of the right hand and left hand via the fastening bands B and B, respectively. When the high voltage power supply 23 is operated with the electrode 5a sandwiched between the counter electrode 5b, the high voltage negative potential -6KV from the high voltage power supply 23 passes through the ion converter 22 and has a high period as shown in FIG. After being converted into a pulsating voltage (ripple voltage) effective for improving the pH value that rises and falls finely, it is applied to the finger portions MF of the left and right hands of the patient via the negative potential applying electrode 5a. .

一方、この時上記対向電極5b側は、例えば図7に示すようにケーブル50bを含むアースライン25を介して第1〜第3の電位治療ユニット6a〜6c各組のものが相互に絶縁された状態で個別に大地に接続された高圧電源回路23のアースライン(0V)に接続されており、確実に電位ゼロとなっている。   On the other hand, on the opposite electrode 5b side, the first to third potential treatment units 6a to 6c of the respective sets are insulated from each other through the earth line 25 including the cable 50b, for example, as shown in FIG. It is connected to the ground line (0 V) of the high-voltage power supply circuit 23 that is individually connected to the ground in the state, and the potential is surely zero.

その結果、上記被治療者の手の指部MFの表面には、図15のように、特に有効な静電誘導により多数のマイナスの電荷e-,e-・・・が効果的に帯電し、同多数の負電荷e-,e-・・・が同手の指部MF,MFの生体組織を介して相対的にプラス電位である対向電極5b側に効率良く誘引されて通過する。 As a result, the surface of the finger portion MF hands of the treated subject, as shown in FIG. 15, particularly effective electrostatic induction by a number of negative charge e -, e - · · · effectively charged , the number of negative charges e -, e - ··· passes are efficiently attracted to the counter electrode 5b side is relatively positive potential via the fingers MF, MF of the living tissue of the same hand.

この通過時に、同多数の負電荷e-,e-・・・が手の指部MF,MF内の多数本の血管中を流れる血液の血液細胞(特に赤血球細胞)に作用して、同血液細胞中の水素イオン(H+)を還元してアルカリ性の水素原子Hに変える。 During this passage, the number of negative charges e -, e - · · · acts on blood cells (particularly red blood cells) of the blood flowing through the hand fingers MF, a large number of blood vessels in the MF, the blood Hydrogen ions (H + ) in the cells are reduced to alkaline hydrogen atoms H.

これにより、血液中のpHが上昇し、酸性度が低下し、免疫機能が向上する。   Thereby, pH in blood rises, acidity falls, and an immune function improves.

ところで、この場合、上記第1〜第3の電位治療ユニット6a〜6c各組の制御回路基板の第1のDC−DC回路29bのGND(1極GND)部分には、図3のように、それぞれ静電抹消器8が接続されている。   By the way, in this case, the GND (1-pole GND) portion of the first DC-DC circuit 29b of each control circuit board of each of the first to third potential treatment units 6a to 6c is as shown in FIG. An electrostatic erasing device 8 is connected to each.

上述のように複数組の電位治療ユニット6a〜6cの各負電位印加電極5aおよび対向電極5bを相互に絶縁して独立したものとすると、負電位発生回路を含む制御回路部に浮遊容量が増え、治療電流値iの変動や雑音の発生、また回路機能上各種の阻害を起こしやすくなる。   As described above, if the negative potential application electrodes 5a and the counter electrodes 5b of the plurality of sets of potential treatment units 6a to 6c are insulated from each other and independent, the stray capacitance increases in the control circuit unit including the negative potential generation circuit. It becomes easy to cause fluctuations in the treatment current value i, generation of noise, and various obstacles in circuit function.

そこで、これを確実に吸収抹消することにより、それら障害の発生を防止するとともに対向電極側の電位をより確実にゼロ(V)に維持するようにしている。   Therefore, by eliminating the absorption with certainty, the occurrence of these failures is prevented and the potential on the counter electrode side is more reliably maintained at zero (V).

一方、この実施の形態では、上記複数組の電位治療ユニット6a〜6cを1つの電源11,12、1つのマイコン制御ユニット7で駆動制御するようにしており、同マイコン制御ユニット7には、上述のタッチパネル3、室温検出センサ17、外気温検出センサ18、湿度センサ19、リレー回路20、リレー出力回路30、D/A変換器出力端子DA1,DA2,DA3、A/D変換器入力端子AD1,AD2,AD3、不揮発メモリ16等が各々接続されている。 On the other hand, in this embodiment, the plurality of sets of potential treatment units 6a to 6c are driven and controlled by one power source 11, 12, and one microcomputer control unit 7. Touch panel 3, room temperature detection sensor 17, outside air temperature detection sensor 18, humidity sensor 19, relay circuit 20, relay output circuit 30, D / A converter output terminals DA 1 , DA 2 , DA 3 , A / D converter input Terminals AD 1 , AD 2 , AD 3 , nonvolatile memory 16 and the like are connected to each other.

また、同マイコン制御ユニット7には、上記電源回路12から+15V電源回路13を介して入力される+15(V)を+5(V)に降圧して使用する動作電源回路14が接続されている。   The microcomputer control unit 7 is connected to an operation power supply circuit 14 that steps down +15 (V) input from the power supply circuit 12 via the +15 V power supply circuit 13 to +5 (V).

そして、上記リレー入力回路20の各入力端子1〜8および上記リレー出力回路30の各出力端子RL1〜RL7は、例えば図2、図3中に同一符号で示されるように対応している。 Then, the output terminals RL 1 ~RL 7 of each input terminal 8 and the relay output circuit 30 of the relay input circuit 20, for example 2, and corresponds as indicated by the same reference numerals in FIG. 3 .

また、上記A/D変換器28,28,28の入力端子AD1〜AD3も同様である。 The same applies to the input terminals AD 1 to AD 3 of the A / D converters 28, 28, 28.

(負電位印加電極5aおよび対向電極5b部分の電流値制御)
この実施の形態では、上述した第1〜第3の電位治療ユニット6a〜6cの3つの電極部共に各々所定の設定電流値に制御されるようになっている。
(Current value control of negative potential application electrode 5a and counter electrode 5b)
In this embodiment, each of the three electrode portions of the first to third potential treatment units 6a to 6c described above is controlled to a predetermined set current value.

そのために、上記第1〜第3の電位治療ユニット6a〜6cには、例えば図2、図8に詳細に示すように、電流検出手段としての電流検出抵抗R、電流アンプ27、A/D変換器28が各々設けられており、上記電極部5a,5bを介した高圧電源回路23を流れる治療電流値iを検出する一方、同検出された治療電流値iに基いて上記高圧電源回路23の電圧値Vを変える電圧制御手段として、D/A変換器26、D/A出力アンプ24が各々設けられており、同D/A出力アンプ24の出力をDC12Vラインのリレー接点RL1(RL2,RL3)を介して高圧電源回路23に入力することによって高圧電源回路23の出力電圧(−6KV)を適切に可変コントロールし、それによって、上記電流検出手段(R,27,28)により検出される治療電流値iが、予じめ図9のようにプログラム設定された所定の治療電流値iになるようにマイコン制御ユニット7でフィードバック制御される。 Therefore, the first to third potential treatment units 6a to 6c include, for example, a current detection resistor R as a current detection means, a current amplifier 27, and A / D conversion, as shown in detail in FIGS. Each of the devices 28 is provided to detect a treatment current value i flowing through the high-voltage power supply circuit 23 via the electrodes 5a and 5b, and based on the detected treatment current value i, As voltage control means for changing the voltage value V, a D / A converter 26 and a D / A output amplifier 24 are provided, respectively, and the output of the D / A output amplifier 24 is connected to a relay contact RL 1 (RL 2 of the DC12V line). appropriately varied controls the output voltage of the high-voltage power supply circuit 23 (-6 KV) by entering the high-voltage power supply circuit 23 via the RL 3), whereby the detection by the current detecting means (R, 27, 28) Treatment current value i to be is feedback controlled by a microcomputer control unit 7 so that the program set predetermined treatment current value i as pre Ji fit Figure 9.

なお、この場合、上述のように治療電流iの値を制御するに際しては、第1の温度センサ(室温センサ)17、第2の温度センサ(外気温センサ)18による内外温度の検出データと湿度センサ19による室内湿度の検出データを、A/D変換器を介して、それぞれマイコン制御ユニット7内に入力し、それらを反映させた上で可及的に高精度な制御を行う。   In this case, when the value of the treatment current i is controlled as described above, the detection data and humidity of the inside / outside temperature by the first temperature sensor (room temperature sensor) 17 and the second temperature sensor (outside temperature sensor) 18 are used. The detection data of the indoor humidity by the sensor 19 is inputted into the microcomputer control unit 7 via the A / D converter, and the control is performed with the highest possible accuracy after reflecting them.

(マイコン制御ユニット7による治療電流値iの具体的な制御・・・治療方法)
上記マイコン制御ユニット7による上記治療電流値iの制御(電極毎の印加タイミング、印加時間、印加電流値、使用電極)は、その治療目的に応じ、例えば図9のタイムチャートに示されるようにしてなされる。
(Specific control of treatment current value i by microcomputer control unit 7: treatment method)
The control of the treatment current value i by the microcomputer control unit 7 (application timing for each electrode, application time, applied current value, electrode used) depends on the treatment purpose, for example, as shown in the time chart of FIG. Made.

このタイムチャートの構成(印加タイミング、印加時間、印加電流値、印加電極、印加部位)は、治療用途、治療目的に応じて種々異なるパターンのものとなるが、今この図9のパターンの場合は、例えば数々の臨床試験の結果から、一般的なガンの抑制を目的とした免疫性向上に有効な治療パターンとして設定されており、上述の第1〜第3の3組の電位治療ユニット6a〜6cの電極の全てを使用し、治療部位としては、例えば図13のような左右の両手、図10のような両足の何れか一方、図11のような頭部MHのこめかみ部分が選択されている。   The structure of this time chart (application timing, application time, applied current value, applied electrode, applied site) will be in a different pattern depending on the therapeutic application and therapeutic purpose. For example, from the results of numerous clinical trials, it is set as a treatment pattern effective for improving immunity for the purpose of suppressing general cancer, and the above-described first to third sets of potential treatment units 6a to 6a All of the electrodes 6c are used, and for example, either the left or right hands as shown in FIG. 13 or the both feet as shown in FIG. 10 or the temple portion of the head MH as shown in FIG. Yes.

今、上記の第1〜第3の電位治療ユニット6a〜6cの各々を使用し、この図9の治療パターンに基いた治療方法を説明すると、次のようになる。   Now, a treatment method based on the treatment pattern of FIG. 9 using each of the first to third potential treatment units 6a to 6c will be described as follows.

(1) 例えば右手にはめた第1の電位治療ユニット6aの負電位印加電極5aと対向電極5bについては、治療スイッチSWを押しても、最初の3分間は全く負電位が印加されず、電極部5a・5bに治療電流iは流れない。しかし、同治療スイッチSWを押して3分後には、電極部5a・5bに急激に3μAの大きな治療電流iが流れる。そして、それが例えば17分間継続する。   (1) For example, with respect to the negative potential application electrode 5a and the counter electrode 5b of the first potential treatment unit 6a fitted to the right hand, no negative potential is applied for the first 3 minutes even when the treatment switch SW is pressed. The treatment current i does not flow through 5a and 5b. However, 3 minutes after pressing the treatment switch SW, a large treatment current i of 3 μA suddenly flows through the electrode portions 5a and 5b. And it continues for 17 minutes, for example.

すなわち、この治療方法では、治療スイッチSWを押してから20分経過後に回路が切れることになる。このとき、上記右手にはめた対向電極5bには全く同じもうひとつの対向電極5bが設けられているので、同対向電極5bを右足の裏にもはめて治療する。   That is, in this treatment method, the circuit is disconnected 20 minutes after the treatment switch SW is pressed. At this time, since the opposite electrode 5b fitted to the right hand is provided with the same other opposite electrode 5b, the opposite electrode 5b is placed on the back of the right foot for treatment.

(2) 一方、他方の左手にはめた第2の電位治療ユニット6bの負電位印加電極5aと対向電極5bについては、治療スイッチSWを押してから10分間は全く負電位が印加されず、電極部5a・5bに治療電流iは流れない。しかし、同治療スイッチSWを押してから10分後に急激に2.5μAの治療電流iが流れ、それが8分間継続する。   (2) On the other hand, for the negative potential application electrode 5a and the counter electrode 5b of the second potential treatment unit 6b fitted to the other left hand, no negative potential is applied for 10 minutes after the treatment switch SW is pressed. The treatment current i does not flow through 5a and 5b. However, a treatment current i of 2.5 μA suddenly flows 10 minutes after the treatment switch SW is pressed, and this continues for 8 minutes.

すなわち、この第2の電位治療ユニット6b側では治療スイッチSWを押してから18分後に回路が切れる。このとき、該左手にはめた第2の電位治療ユニット6bの電極部5a・5bの対向電極5bにも全く同じもうひとつの対向電極5bが設けられているので、同対向電極5bを左足の裏にもはめて治療する。   That is, on the second potential treatment unit 6b side, the circuit is cut 18 minutes after the treatment switch SW is pressed. At this time, since the opposite electrode 5b of the electrode portions 5a and 5b of the second potential treatment unit 6b fitted to the left hand is also provided with the same another counter electrode 5b, the counter electrode 5b is attached to the sole of the left foot. Also treat it.

(3) さらに、第3の電位治療ユニット6cを使用し、上記(2)の場合と全く同様の負電位印加タイミング、印加電流値で、例えば図11に示すように頭部MHの左こめかみ部分に負電位印加電極5aを当てるとともに右こめかみ部分に対向電極5bを当てて治療する。   (3) Further, using the third potential treatment unit 6c, the left temple portion of the head MH as shown in FIG. 11, for example, with the same negative potential application timing and applied current value as in (2) above. The negative potential application electrode 5a is applied to the right and the counter electrode 5b is applied to the right temple portion to treat.

このような治療方法を実施した結果、一例として血液中のpHが7.34以下の酸性であったガン患者のpH値が略健康な7.4のアルカリ性に改善された。   As a result of carrying out such a treatment method, as an example, the pH value of cancer patients who were acidic with a pH in blood of 7.34 or lower was improved to a substantially healthy 7.4 alkalinity.

以上のように、この出願の発明では、高圧の負電位を発生する高圧電源回路と、該高圧電源回路からの負電位を生命体の所定部位に印加する負電位印加電極と、該負電位印加電極との間に生命体の所定の部位を挟んで対向し、負電位印加電極からの電荷を生命体の生体組織を介して上記高圧電源回路のアース側に誘引する対向電極とからなる電位治療ユニットを複数組備え、これら複数組の電位治療ユニットを1つのAC電源、1つのマイコン制御ユニットで駆動制御するようにしてなる生命体の治癒力向上装置において、上記複数組の電位治療ユニットの各々の上記アースラインを相互にアイソレーションした独立のものとして構成している。   As described above, in the invention of this application, a high-voltage power supply circuit that generates a high-voltage negative potential, a negative-potential application electrode that applies a negative potential from the high-voltage power supply circuit to a predetermined part of a living body, and the negative potential application A potential treatment comprising a counter electrode that opposes a predetermined part of a living organism with an electrode and attracts a charge from a negative potential application electrode to the ground side of the high-voltage power supply circuit through a living tissue of the living organism. Each of the plurality of sets of potential treatment units includes a plurality of sets of units, and each of the plurality of sets of potential treatment units includes a plurality of sets of potential treatment units that are driven and controlled by one AC power source and one microcomputer control unit. The above earth lines are isolated from each other.

このように、治療対象部位を異にする複数組の電位治療ユニットの負電位印加電極および対向電極の各々のアースラインを相互に絶縁し、それぞれ独立させた状態で個別に電流を流すようにすると、前述のように一方の治療対象側の電極の電流が他方側別の治療対象側の被治療部および対向電極部に流れて、同部分の治療効果を阻害する問題が確実に改善される。   In this way, the ground lines of the negative potential application electrode and the counter electrode of a plurality of sets of potential treatment units with different treatment target parts are insulated from each other, and the currents are made to flow individually in an independent state. As described above, the current of the electrode on one treatment target side flows to the treated portion and the counter electrode portion on the other treatment target side, and the problem of hindering the therapeutic effect of the same portion is reliably improved.

そして、上記複数組の電位治療ユニットには、それぞれ静電抹消器が設けられている。   Each of the plurality of sets of potential treatment units is provided with an electrostatic neutralizer.

上述のように複数組の電位治療ユニットの各負電位印加電極および対向電極を相互に絶縁して独立したものとすると、負電位発生回路を含む制御回路部に浮遊容量が増え、治療電流値の変動や雑音の発生、また回路機能上各種の阻害を起こしやすくなる。   As described above, when the negative potential application electrodes and the counter electrodes of the plurality of sets of potential treatment units are insulated and independent from each other, stray capacitance increases in the control circuit unit including the negative potential generation circuit, and the treatment current value Fluctuations, noises, and various obstacles to circuit functions are likely to occur.

そこで、これを吸収抹消することにより、それら障害の発生を防止するとともに対向電極側の電位をより確実にゼロ(V)に維持するようにする。   Therefore, by eliminating this absorption, the occurrence of these failures is prevented and the potential on the counter electrode side is more reliably maintained at zero (V).

また、上記複数組の電位治療ユニットは、少なくとも3組設けられている。   Further, at least three sets of the plurality of sets of potential treatment units are provided.

このように、上記複数組の電位治療ユニットを少なくとも3組にすると、負電位印加電極および対向電極を、例えば右手甲部および手掌、左手甲部および手掌に加えて左こめかみ及び右こめかみ、又は右足甲部および足裏、左足甲部および足裏に加えて左こめかみ及び右こめかみ等の各々を治療部として、体全体から見た効果的な位置で効率良く血液のpH改善効果をあげることができる。   Thus, when the plurality of sets of potential treatment units are at least three sets, the negative potential application electrode and the counter electrode are, for example, the left and right temples or the right foot in addition to the right back and palm, the left back and palm, for example. In addition to the upper part and sole, left instep part and sole, each of the left and right temples can be used as a treatment part to effectively increase blood pH at an effective position as seen from the whole body. .

また、上記複数組の電位治療ユニットの何れか所望の組の負電位印加電極および対向電極の内の対向電極は、2つの対向電極により構成されている。   Moreover, the counter electrode of the desired pair of negative potential application electrodes and counter electrodes of the plurality of sets of potential treatment units is composed of two counter electrodes.

このような構成によると、対向電極が2つある組の電位治療ユニットの電極部分では、例えば負電位印加電極と1つの対向電極とで被治療者の手指部を挟む一方、もう1つの対向電極を足の甲部又は足の裏部分に当接させて人体を流れる電流を拾うことができ、人体に流出する電流を有効に活用して1組の電極で2点治療を行うことが可能となる。   According to such a configuration, in the electrode portion of the pair of potential treatment units having two counter electrodes, for example, the finger part of the patient is sandwiched between the negative potential application electrode and one counter electrode, while the other counter electrode The current flowing through the human body can be picked up by contacting the back of the foot or the back of the foot, and the two-point treatment can be performed with one set of electrodes by effectively utilizing the current flowing out of the human body. Become.

また、上記複数組の電位治療ユニット各々の負電位印加電極および対向電極部分を流れる電流値を検出し、同対向電極部分を流れる電流値を所定の設定電流値に制御する電流制御手段を設けている。   Also, there is provided current control means for detecting a current value flowing through the negative potential applying electrode and the counter electrode portion of each of the plurality of sets of potential treatment units and controlling the current value flowing through the counter electrode portion to a predetermined set current value. Yes.

このような構成によると、被治療者の血液のpH値に応じたpH改善治療や治療部位、治療目的に応じた印加電圧、電流値、印加時間、印加タイミングの調節が可能となり、臨床的に最も効果的な治療電流、治療時間、治療タイミング、治療スパンの設定探求が可能となる。   According to such a configuration, it becomes possible to adjust the applied voltage, current value, application time, and application timing according to the pH improvement treatment and treatment site according to the blood pH value of the patient to be treated, the treatment purpose, and clinically. It is possible to search for the most effective treatment current, treatment time, treatment timing, and treatment span.

これらの結果、本願発明によれば、電位治療器等生命体の治癒力向上装置の治癒力向上効果を有効に改善することができる。   As a result, according to the present invention, it is possible to effectively improve the healing power improvement effect of the living body healing power improvement apparatus such as a potential therapy device.

本願発明の生命体の治癒力向上装置を電位治療器として構成した最良の実施の形態に係る電位治療器本体の全体構成を示す図である。It is a figure which shows the whole structure of the electric potential treatment device main body which concerns on the best embodiment which comprised the healing power improvement apparatus of the living body of this invention as an electric potential treatment device. 同電位治療器の制御回路全体の構成を示すブロック図である。It is a block diagram which shows the structure of the whole control circuit of the same electric potential treatment apparatus. 同電位治療器の各組の電位治療ユニット部分(負電位発生回路および電極部分)の構成を示すブロック図である。It is a block diagram which shows the structure of the electric potential treatment unit part (a negative electric potential generation circuit and an electrode part) of each group of the same electric potential treatment device. 同電位治療器の温湿度検出センサ部分の構成を示すブロック図である。It is a block diagram which shows the structure of the temperature / humidity detection sensor part of the same electric potential treatment device. 同電位治療器のイオン変換器部分の構成を示す図である。It is a figure which shows the structure of the ion converter part of the same electric potential treatment device. 同電位治療器のイオン変換器の機能を示す実験データの電圧波形図である。It is a voltage waveform figure of the experimental data which shows the function of the ion converter of the same electric potential treatment device. 同電位治療器の要部の構成と作用を示すブロック図である。It is a block diagram which shows the structure and effect | action of the principal part of the same electric potential treatment device. 同電位治療器の要部である治療電流制御回路部分の構成を示す図である。It is a figure which shows the structure of the treatment current control circuit part which is the principal part of the same electric potential treatment device. 同電位治療器の治療パターンの一例を示すタイムチャートである。It is a time chart which shows an example of the treatment pattern of the same electric potential treatment device. 同電位治療器の要部である治療部位(負電位印加部位)が足である場合の電極設置状態を示す図である。It is a figure which shows the electrode installation state in case the treatment site | part (negative potential application site | part) which is the principal part of the same electric potential treatment device is a leg | foot. 同電位治療器の要部である治療部位(負電位印加部位)が頭部である場合の電極設置状態を示す図である。It is a figure which shows the electrode installation state in case the treatment site | part (negative potential application site | part) which is the principal part of the same electric potential treatment device is a head. 本願発明者が先に開発した電位治療器の全体的な構成を示す図である。It is a figure which shows the whole structure of the electric potential therapeutic device which this inventor developed previously. 同電位治療器の治療部位(負電位印加部位)が手である場合の電極設置状態を示す図である。It is a figure which shows the electrode installation state in case the treatment site | part (negative potential application site | part) of the same electric potential treatment device is a hand. 同電位治療器の制御回路の構成とアース構造を示すブロック図である。It is a block diagram which shows the structure and grounding structure of the control circuit of the same potential treatment device. 同電位治療器の電極部の構成と作用を示す図である。It is a figure which shows the structure and effect | action of an electrode part of the same electric potential treatment device.

符号の説明Explanation of symbols

1は電位治療器、2は制御回路部、3はタッチパネル、4a,4bはコネクタ部、5aは負電位印加電極、5bは対向電極、6a〜6cは第1〜第3の電位治療ユニット、7はマイコン制御ユニット、22はイオン変換器、23は高圧電源回路、24はD/A出力アンプ、26はD/A変換器、27は電流アンプ、28はA/D変換器である。   1 is a potential treatment device, 2 is a control circuit unit, 3 is a touch panel, 4a and 4b are connector units, 5a is a negative potential application electrode, 5b is a counter electrode, 6a to 6c are first to third potential treatment units, 7 Is a microcomputer control unit, 22 is an ion converter, 23 is a high-voltage power supply circuit, 24 is a D / A output amplifier, 26 is a D / A converter, 27 is a current amplifier, and 28 is an A / D converter.

Claims (5)

高圧の負電位を発生する高圧電源回路と、該高圧電源回路からの負電位を生命体の所定部位に印加する負電位印加電極と、該負電位印加電極との間に生命体の所定の部位を挟んで対向し、負電位印加電極からの電荷を生命体の生体組織を介して上記高圧電源回路のアース側に誘引する対向電極とからなる電位治療ユニットを複数組備え、これら複数組の電位治療ユニットを1つのAC電源、1つのマイコン制御ユニットで駆動制御するようにしてなる生命体の治癒力向上装置において、上記複数組の電位治療ユニットの各々の上記アースラインを相互にアイソレーションした独立のものとして構成したことを特徴とする生命体の治癒力向上装置。   A high-voltage power supply circuit that generates a high-voltage negative potential, a negative potential application electrode that applies a negative potential from the high-voltage power supply circuit to a predetermined part of the living body, and a predetermined part of the living body between the negative potential application electrode A plurality of sets of potential treatment units, each of which has a pair of opposing electrodes that attracts the charge from the negative potential application electrode to the ground side of the high-voltage power supply circuit through the living body tissue. In an apparatus for improving the healing power of a living body in which a treatment unit is driven and controlled by one AC power source and one microcomputer control unit, the ground lines of each of the plurality of sets of potential treatment units are isolated from each other independently. A device for improving the healing power of a living body, characterized in that it is configured as a thing. 上記複数組の電位治療ユニットには、それぞれ静電抹消器が設けられていることを特徴とする請求項1記載の生命体の治癒力向上装置。   2. The vitality healing power improvement device according to claim 1, wherein each of the plurality of sets of potential treatment units is provided with an electrostatic neutralizer. 上記複数組の電位治療ユニットは、少なくとも3組であることを特徴とする請求項1又は2記載の生命体の治癒力向上装置。   3. The living body healing power improvement apparatus according to claim 1, wherein the plurality of sets of potential treatment units are at least three sets. 上記複数組の電位治療ユニットの何れか所望の組の負電位印加電極および対向電極の内の対向電極は2つの対向電極により構成されていることを特徴とする請求項1,2又は3記載の生命体の治癒力向上装置。   The negative electrode applying electrode and the counter electrode of the desired set of any of the plurality of sets of potential treatment units are constituted by two counter electrodes. A device for improving the healing power of living organisms. 上記複数組の電位治療ユニット各々の負電位印加電極および対向電極部分を流れる電流値を検出し、同電流値を所定の設定電流値に制御する電流制御手段を設けたことを特徴とする請求項1,2,3又は4記載の生命体の治癒力向上装置。   The current control means for detecting a current value flowing through the negative potential applying electrode and the counter electrode portion of each of the plurality of sets of potential treatment units and controlling the current value to a predetermined set current value is provided. The living body healing power improvement apparatus according to 1, 2, 3 or 4.
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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2017006422A (en) * 2015-06-23 2017-01-12 日本セルフメディカル株式会社 Energy-saving type digital high voltage electrical potential therapy apparatus
JP2017209229A (en) * 2016-05-24 2017-11-30 株式会社アミン Electric stimulation device
JP2019092952A (en) * 2017-11-25 2019-06-20 日本セルフメディカル株式会社 Wearable potential therapeutic instrument

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JP2001321451A (en) * 2000-05-17 2001-11-20 Fuchu Tempearl:Kk Potential therapy instrument and method for treatment using the same
JP2005296441A (en) * 2004-04-14 2005-10-27 Noboru Horiguchi Electric potential therapeutic instrument and waveform shaper for electric potential therapeutic instrument
JP2007014623A (en) * 2005-07-08 2007-01-25 Hakuju Inst For Health Science Co Ltd Potential therapy apparatus

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JPS6137256A (en) * 1984-07-31 1986-02-22 廣瀬 瑞穂 Low frequency treatment device and its use
JP2001321451A (en) * 2000-05-17 2001-11-20 Fuchu Tempearl:Kk Potential therapy instrument and method for treatment using the same
JP2005296441A (en) * 2004-04-14 2005-10-27 Noboru Horiguchi Electric potential therapeutic instrument and waveform shaper for electric potential therapeutic instrument
JP2007014623A (en) * 2005-07-08 2007-01-25 Hakuju Inst For Health Science Co Ltd Potential therapy apparatus

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JP2017006422A (en) * 2015-06-23 2017-01-12 日本セルフメディカル株式会社 Energy-saving type digital high voltage electrical potential therapy apparatus
JP2017209229A (en) * 2016-05-24 2017-11-30 株式会社アミン Electric stimulation device
JP2019092952A (en) * 2017-11-25 2019-06-20 日本セルフメディカル株式会社 Wearable potential therapeutic instrument

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